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首页> 外文期刊>Journal of Electroanalytical Chemistry: An International Journal Devoted to All Aspects of Electrode Kinetics, Interfacial Structure, Properties of Electrolytes, Colloid and Biological Electrochemistry >Phenylamide-oxime and phenylamide nanolayer covalently grafted carbon via electroreduction of the corresponding diazonium salts for detection of nickel ions
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Phenylamide-oxime and phenylamide nanolayer covalently grafted carbon via electroreduction of the corresponding diazonium salts for detection of nickel ions

机译:苯酰胺 - 肟和苯酰胺纳米层通过电控到相应的重氮盐的电气传递碳,用于检测镍离子

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摘要

This study focuses on the covalent grafting of thin organic layers on a glassy carbon electrode by aryl diazonium salts containing functional groups capable of complexing Ni(II) ions. The goal was to develop a modified electrode for the detection of Ni(II) ions in aqueous media. The glassy carbon electrode (GCE) surface was modified by electrochemical reduction of diazonium salts synthesized in-situ in aqueous acid medium from 4-amino-benzamide (4-AB) and 4-amino-benzamide-oxime (4-ABO). XPS, AFM, ellipsometry and cyclic voltammetry were used for surface characterization of the grafted GCE. The barrier properties of the grafted layer were determined and compared by cyclic voltammetry, using Fe(CN)(63)(-/)(4-), Ru(NH3)(6)(3+/2+) and dopamine redox probes in different pH media. The adsorptive properties of the grafted glassy carbon were compared for Pb(II), Cu(II) and Ni(II) cations. The ability of these modified GCE to detect Ni(II) ions was then explored using a two-step method: i) complexation of Ni(II) by the grafted layer, followed by ii) electroreduction of the complexed Ni (II) and then its analysis by anodic square wave voltammetry. The 4-ABO grafted glassy carbon electrodes were able to detect Ni(II) in micro-molar concentration. The presence of ions such as Pb2+, Mg2+, Ca2+, K+ and Na+ did not interfere with the Ni(II) quantification. The phenyl-oxime functionalized electrodes showed good robustness during more than fifty electroanalysis.
机译:该研究侧重于含有能够络合Ni(II)离子的官能团的芳基重氮盐在玻璃碳电极上的薄有机层的共价接枝。目标是开发用于检测水性介质中Ni(II)离子的改性电极。通过在4-氨基 - 苯甲酰胺(4-AB)和4-氨基 - 苯甲酰肟(4-ABO)中,通过在酸培养基中原位的二氮鎓盐的电化学还原改变玻璃碳电极(GCE)表面。 XPS,AFM,椭圆形测定和循环伏安法用于接枝的GCE的表面表征。使用Fe(CN)(63)( - /)(4-),Ru(NH 3)(6)(3 + / 2 +)和多巴胺氧化还原探针,通过环状伏安法测定并比较接枝层的阻隔性并通过循环伏安法进行比较在不同的pH媒体中。将接枝玻璃碳的吸附性与Pb(II),Cu(II)和Ni(II)阳离子进行比较。然后使用两步法检测这些改性的GCE检测Ni(II)离子的能力:i)络合层的Ni(II)络合,其次是络合物Ni(II)的电荷,然后络合阳极方波伏安法分析。 4-ABO接枝玻璃碳电极能够检测微摩尔浓度的Ni(II)。离子的存在,例如Pb2 +,Mg 2 +,Ca 2 +,K +和Na +不会干扰Ni(II)量化。苯基 - 肟官能化电极在超过50个电分析期间显示出良好的鲁棒性。

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